source: trunk/source/processes/hadronic/models/qmd/include/G4QMDReaction.hh @ 1102

Last change on this file since 1102 was 1055, checked in by garnier, 15 years ago

maj sur la beta de geant 4.9.3

File size: 4.5 KB
Line 
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26// -------------------------------------------------------------------
27//      GEANT4 Class file
28//
29//
30//      File name: G4QMDReaction.hh
31//
32//      Author: Koi, Tatsumi (tkoi@slac.stanford.edu)       
33//
34//      Creation date: 02 April 2007
35// -----------------------------------------------------------------------------
36//
37// 081107 Add UnUseGEM (then use the default channel of G4Evaporation)
38//            UseFrag (chage criterion of a inelastic reaction)
39// 090331 Change member shenXS and genspaXS object to pointer
40//
41
42#ifndef G4QMDReaction_hh
43#define G4QMDReaction_hh
44
45#include "G4QMDSystem.hh"
46#include "G4QMDCollision.hh"
47#include "G4QMDMeanField.hh"
48#include "G4QMDParticipant.hh"
49
50#include "G4IonsShenCrossSection.hh"
51#include "G4GeneralSpaceNNCrossSection.hh"
52
53#include "G4HadronicInteraction.hh"
54
55#include "G4Evaporation.hh"
56#include "G4ExcitationHandler.hh"
57//#include "G4PreCompoundModel.hh"
58
59class G4QMDReaction : public G4HadronicInteraction
60{
61   public:
62      G4QMDReaction();
63      ~G4QMDReaction();
64
65      std::vector< G4QMDSystem* > GetFinalStates(); 
66
67
68      G4HadFinalState *ApplyYourself( const G4HadProjectile &aTrack, G4Nucleus & targetNucleus );
69
70      void UnUseGEM(){ gem = false; setEvaporationCh(); };
71      void UseFRAG(){ frag = true; };
72
73      void EnableFermiG(){ heg = true; setHighEnergyModel(); };
74
75   private:
76
77      void setEvaporationCh();
78      void setHighEnergyModel();
79
80      G4QMDMeanField* meanField;
81
82      G4QMDCollision* collision;
83
84      void doCollision();
85      std::vector< G4QMDSystem* > doClusterJudgment();
86     
87      G4QMDSystem* system;
88      G4double deltaT;
89      G4int maxTime;
90
91      G4Evaporation* evaporation;
92      G4ExcitationHandler* excitationHandler;
93
94//      G4VPreCompoundModel* preco;
95
96
97      //                            b        pd_proj                pd_targ                  z_p     a_p     z_t     a_t      plab       elab
98//      G4double offSetOfCollision( G4double , G4ParticleDefinition* , G4ParticleDefinition* , G4int , G4int , G4int , G4int , G4double , G4double  ); 
99      //                           b          pd_proj                 pd_targ                 plab       elab      bmax boostToCM
100      void calcOffSetOfCollision( G4double , G4ParticleDefinition* , G4ParticleDefinition* , G4double , G4double , G4double , G4ThreeVector ); 
101      G4double coulomb_collision_gamma_proj;
102      G4double coulomb_collision_rx_proj;
103      G4double coulomb_collision_rz_proj;
104      G4double coulomb_collision_px_proj;
105      G4double coulomb_collision_pz_proj;
106
107      G4double coulomb_collision_gamma_targ;
108      G4double coulomb_collision_rx_targ;
109      G4double coulomb_collision_rz_targ;
110      G4double coulomb_collision_px_targ;
111      G4double coulomb_collision_pz_targ;
112
113//090331
114      G4IonsShenCrossSection* shenXS;
115      G4GeneralSpaceNNCrossSection* genspaXS;
116
117      G4bool gem;
118      G4bool frag;
119      G4bool heg;
120
121};
122
123#endif
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